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鸽子水平半规管传入纤维的反应。I. 阶跃、梯形和低频正弦机械及旋转刺激。

Responses of pigeon horizontal semicircular canal afferent fibers. I. Step, trapezoid, and low-frequency sinusoid mechanical and rotational stimulation.

作者信息

Dickman J D, Correia M J

机构信息

Department of Otolaryngology, University of Texas Medical Branch, Galveston 77550.

出版信息

J Neurophysiol. 1989 Nov;62(5):1090-101. doi: 10.1152/jn.1989.62.5.1090.

Abstract
  1. The horizontal semicircular canals of anesthetized (barbiturate/ketamine) pigeons were stimulated by rotational and by mechanical stimulation. 2. The mechanical stimulation consisted of making a small (less than 1 mm) fistula in the lateral part of the bony horizontal semicircular canal and, after inserting a probe coupled to a piezoelectric micropusher through the fistula, providing controlled indentation of the exposed membranous horizontal semicircular duct. 3. Extracellular action potentials from single horizontal semicircular canal primary afferent (HCA) fibers were recorded during sinusoidal rotational and during step, ramp, and sinusoidal mechanical stimulation. 4. The mean spontaneous discharge rate of 160 horizontal canal afferents was 86 +/- 4 (SE) spikes/s. This rate was not significantly different from that reported previously for pigeon HCA fibers recorded with the horizontal canal intact (i.e., no fistula introduced). 5. Sinusoidal mechanical indentation of the horizontal semicircular duct produced clearly entrained action potentials on 36 HCA fibers for a range of peak displacements from +/- 0.5 to +/- 30 microns. Action potentials were never modulated on afferents (n greater than 100) identified as innervating the anterior and posterior semicircular canals or the otolith organs during mechanical stimulation of the horizontal semicircular canal, even for displacements as large as 30 microns. 6. Intensity functions relating peak firing frequency (spikes per second) and peak probe displacement (micrometers) for 1.0-Hz sinusoidal mechanical stimulation were linear over the range 1.0-5.0 microns. The most sensitive units (6/36, 17%) showed response saturation as the stimulus magnitude was extended to 7 microns and beyond. 7. In 15 of 36 units, both mechanical and rotational sinusoidal stimulation (1.0 Hz) were applied to the same unit. The duct indentation magnitudes were 1.0, 2.5, 5.0, and 7.0 microns and the rotational velocities were 5, 10, and 20 deg/s. The constant of proportionality found to equate the peak response produced by rotational to that elicited by mechanical stimulation was 7.0 deg.sec-1/1.0 microns. 8. Bode plots and best-fit transfer functions of the frequency response (0.05-10.0 Hz) of 14 HCAs exposed to both mechanical and rotational stimulation were nearly identical. 9. Parameters for best-fit transfer functions, responses to step, and trapezoidal duct displacements were in excellent agreement with previous rotational studies carried out using the pigeon. 10. Although the mechanisms by which focal identation of the horizontal membranous duct produce responses have not yet been determined, primary afferent responses using this method of stimulation are directly comparable with rotatory stimulation.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 对麻醉(巴比妥酸盐/氯胺酮)的鸽子的水平半规管进行旋转刺激和机械刺激。

  2. 机械刺激包括在骨性水平半规管外侧制作一个小(小于1毫米)瘘管,通过该瘘管插入与压电微推进器相连的探头,对暴露的膜性水平半规管进行可控压痕。

  3. 在正弦旋转刺激以及阶跃、斜坡和正弦机械刺激期间,记录单个水平半规管初级传入(HCA)纤维的细胞外动作电位。

  4. 160条水平半规管传入纤维的平均自发放电率为86±4(标准误)个脉冲/秒。该速率与之前在水平半规管完整(即未引入瘘管)的情况下记录的鸽子HCA纤维的速率无显著差异。

  5. 水平半规管的正弦机械压痕在36条HCA纤维上产生了明显的夹带动作电位,峰值位移范围为±0.5至±30微米。在水平半规管机械刺激期间,被确定为支配前、后半规管或耳石器官的传入纤维(n>100)的动作电位从未被调制,即使位移高达30微米。

  6. 对于1.0赫兹的正弦机械刺激,将峰值放电频率(每秒脉冲数)与峰值探头位移(微米)相关的强度函数在1.0 - 5.0微米范围内呈线性。随着刺激幅度扩展到7微米及以上,最敏感的单位(6/36,17%)显示出反应饱和。

  7. 在36个单位中的15个单位中,对同一单位同时施加机械和旋转正弦刺激(1.0赫兹)。导管压痕幅度为1.0、2.5、5.0和7.0微米,旋转速度为5、10和20度/秒。发现使旋转产生的峰值反应与机械刺激引起的峰值反应相等的比例常数为7.0度·秒-1/1.0微米。

  8. 14条同时接受机械和旋转刺激的HCA的频率响应(0.05 - 10.0赫兹)的波特图和最佳拟合传递函数几乎相同。

  9. 最佳拟合传递函数的参数、对阶跃的反应以及梯形导管位移与之前使用鸽子进行的旋转研究结果非常一致。

  10. 虽然水平膜性导管的局部压痕产生反应的机制尚未确定,但使用这种刺激方法的初级传入反应与旋转刺激直接可比。(摘要截断于400字)

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